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MathsHardNumerical2023 ยท 01 Feb Shift 1

Q88.Let ๐‘“: โ„โ†’โ„ be a differentiable function such that ๐‘“'๐‘ฅ+ ๐‘“๐‘ฅ= โˆซ0 ๐‘“๐‘ก๐‘‘๐‘ก. If ๐‘“0 = ๐‘’-2, then 2๐‘“0 - ๐‘“2 is equal to _____ .

What This Question Tests

This problem involves converting an integro-differential equation into a linear first-order differential equation using Leibniz rule, and then solving it using the integrating factor method to find the function f(x).

Concepts Tested

Differentiation under integral sign (Leibniz rule)Linear first-order differential equationsIntegrating factor method

Formulas Used

d/dx โˆซ[a(x), b(x)] f(t) dt = f(b(x))b'(x) - f(a(x))a'(x)

Integrating factor = e^(โˆซP(x)dx)

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3.10 In a reaction between A and B, the initial rate of reaction (r0) was measured for different initial concentrations of A and B as given below: A/ mol Lโ€“1 0.20 0.20 0.40 B/ mol Lโ€“1 0.30 0.10 0.05 r0/mol Lโ€“1sโ€“1 5.07 ร— 10โ€“5 5.07 ร— 10โ€“5 1.43 ร— 10โ€“4 What is the order of the reaction with respect to A and B? 3.11 The following results have been obtained during the kinetic studies of the reaction: 2A + B ยฎ C + D Experiment [A]/mol Lโ€“1 [B]/mol Lโ€“1 Initial rate of formation of D/mol Lโ€“1 minโ€“1 I 0.1 0.1 6.0 ร— 10โ€“3 II 0.3 0.2 7.2 ร— 10โ€“2 III 0.3 0.4 2.88 ร— 10โ€“1 IV 0.4 0.1 2.40 ร— 10โ€“2 Determine the rate law and the rate constant for the reaction. 3.12 The reaction between A and B is first order with respect to A and zero order with respect to B. Fill in the blanks in the following table: Experiment [A]/ mol Lโ€“1 [B]/ mol Lโ€“1 Initial rate/ mol Lโ€“1 minโ€“1 I 0.1 0.1 2.0 ร— 10โ€“2 II โ€“ 0.2 4.0 ร— 10โ€“2 III 0.4 0.4 โ€“ IV โ€“ 0.2 2.0 ร— 10โ€“2 3.13 Calculate the half-life of a first order reaction from their rate constants given below: (i) 200 sโ€“1 (ii) 2 minโ€“1 (iii) 4 yearsโ€“1 3.14 The half-life for radioactive decay of 14C is 5730 years. An archaeological artifact containing wood had only 80% of the 14C found in a living tree. Estimate the age of the sample. 3.15 The experimental data for decomposition of N2O5 [2N2O5 ยฎ 4NO2 + O2] in gas phase at 318K are given below: t/s 0 400 800 1200 1600 2000 2400 2800 3200 102 ร— [N2O5]/ 1.63 1.36 1.14 0.93 0.78 0.64 0.53 0.43 0.35 mol Lโ€“1 (i) Plot [N2O5] against t. (ii) Find the half-life period for the reaction. (iii) Draw a graph between log[N2O5] and t. (iv) What is the rate law ? Chemistry 86 Reprint 2025-26 (v) Calculate the rate constant. (vi) Calculate the half-life period from k and compare it with (ii).

๐Ÿ“‹ Question Details

Chapter
Differential Equations
Topic
Linear differential equations
Year
2023
Shift
01 Feb Shift 1
Q Number
Q88
Type
Numerical
NCERT Ref
Class 12 Mathematics Ch 9: Differential Equations

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